Robotics, Data science and Healthcare technologies

Difference between revisions of "Main Page"

From Robotics, Data science and Healthcare technologies
Jump to navigation Jump to search
 
(44 intermediate revisions by 4 users not shown)
Line 1: Line 1:
==Test slideshow ==
+
<div style="position: relative; overflow: hidden; height: 1000px;"><!-- RECOMMENDED THIS HEIGHT IS THE SAME AS THE HEIGHT SET FOR THE IMAGES -->
<div style="position: relative; height: 1%;">
+
{{DISPLAYTITLE:<span style="position: absolute; clip: rect(1px 1px 1px 1px); clip: rect(1px, 1px, 1px, 1px);">{{FULLPAGENAME}}</span>}}
<div style="position: relative; margin: 0 -1em; padding: 0; background-color: transparent; border: 1px none #ddd; height: 1%;"><!--YOU CAN ADD SHADING, BACKGROUND COLOR TO STYLE THIS -->
+
The three scientific themes of the team highlight its interdisciplinarity, and allow reflecting the variety of disciplines that interact within the team. It emphasizes research recognized at the best international level, in particular in medical robotics and data science for health:
  <div style="position: relative; margin: 0 auto; width: 742px;height: 1%;"><!-- RECOMMEND THE WIDTH IS SET TO LOOK GOOD ON IPADS ETC. THIS WILL BE THE TOTAL WIDTH VIEWABLE AREA -->
+
* '''[[Medical Robotics and Interventional Imaging]]'''  gathers the historical activities of the team in the field of robotic assistance to minimally invasive medical and surgical procedures, and, beyond, around methodological and clinical developments in interventional radiology.
<div style="position: relative; overflow: hidden; height: 300px;"><!-- RECOMMENDED THIS HEIGHT IS THE SAME AS THE HEIGHT SET FOR THE IMAGES -->
+
* '''[[Learning, Modelling and Data Science]]'''  gathers the activities of the team around artificial intelligence (AI), biomechanical simulation and measurement and evaluation methods, pursued both independently and in synergy, as simulation can be used to generate data for learning.
 +
* '''[[Complex Systems and Parsimony|Complex systems and parsimony]]''' gathers activities around the control of complex systems, with an evolution over the period aiming at taking into account parsimony as an issue for the control but also for the mechatronics design of robots.
 +
 
  
 
<div id="wrapper">  
 
<div id="wrapper">  
<slideshow sequence="random" transition="fade" refresh="3000" center="true">
+
<slideshow transition="fade" refresh="3000" center="true">
<div style="position: relative; height: 1%;">[[Image:Image1.png|right|400px|Caption 1|link=Medical robotics and Interventional imaging]]</div>
+
<div>[[Image:2022_rdh_porfolio.jpg|400px|Caption 2|link=Medical Robotics and Interventional Imaging]]</div>
<div style="position: relative; height: 1%;">[[Image:Image2.png|right|400px|Caption 2|link=Learning, modelling and data science]]</div>
+
<div>[[Image:Cemento_bis.jpg|500px|Caption 1|link=Medical Robotics and Interventional Imaging]]</div>
 +
<div>[[Image:ICube_AVR_IRM_authorLcuvillon_Credit_F.Maigrot_and_Ircad.jpg|400px|Caption 2|link=Medical Robotics and Interventional Imaging]]</div>
 +
<div>[[Image:ARC_CR.png|450px|ARC needle|link=Medical Robotics and Interventional Imaging]]</div>
 +
<div>[[Image:Im3.jpg.jpg|400px|Caption 2|link=Learning, Modelling and Data Science]]</div>
 +
<div>[[Image:cvs.png|400px|Image-based estimation of the critical view of safety in cholecystectomy|link=Learning, Modelling and Data Science]]</div>
 +
<div>[[Image:sperry.png|400px|Robotic needle insertion with finite element simulation in the control loop|link=Learning, Modelling and Data Science]]</div>
 +
<div>[[Image:Im4_t3.jpg|300px|Climatology Drone|link=Complex Systems and Parsimony]]</div>
 +
<div>[[Image:Im6_t3.jpg|300px|Street Art Drone|link=Complex Systems and Parsimony]]</div>
 
</slideshow>
 
</slideshow>
 
</div>
 
</div>
 
</div>
 
 
</div></div>
 
 
== Heading text ==
 
 
<gallery mode="slideshow" widths=300px>
 
Image:Image1.png|right|frameless|300px|''[[commons:Astronotus ocellatus|Astronotus ocellatus]]'' (Oscar)
 
Image:Image2.png|right|frameless|300px|''[[commons:Salmo salar|Salmo salar]]'' (Salmon Larva)
 
</gallery>
 
 
== Heading text ==
 
 
<div style="position: relative; height: 1%;">
 
<div style="position: relative; margin: 0 -1em; padding: 0; background-color: transparent; border: 1px none #ddd; height: 1%;"><!--YOU CAN ADD SHADING, BACKGROUND COLOR TO STYLE THIS  -->
 
  <div style="position: relative; margin: 0 auto; width: 800px;height: 1%;"><!-- RECOMMEND THE WIDTH IS SET TO LOOK GOOD ON IPADS ETC. THIS WILL BE THE TOTAL WIDTH VIEWABLE AREA -->
 
<div style="position: relative; overflow: hidden; height: 500px;"><!-- RECOMMENDED THIS HEIGHT IS THE SAME AS THE HEIGHT SET FOR THE IMAGES -->
 
<div class='wrapper'>
 
<gallery mode="packed" widths=200px heights=300px perrow=10><!-- PERROW SHOULD BE THE SAME NUMBER AS THE TOTAL NUMBER OF IMAGES IF YOU WANT THE GALLERY TO LOOK LIKE A SLIDING ROW OF IMAGES. -->
 
Image:Image1.png
 
Image:Image2.png
 
Image:Image1.png
 
Image:Image2.png
 
Image:Image1.png
 
Image:Image2.png
 
Image:Image1.png
 
Image:Image2.png
 
Image:Image1.png
 
Image:Image2.png
 
</gallery>
 
 
 
</div>
 
</div>
</div> </div>
 
 
</div></div>
 

Latest revision as of 00:03, 12 November 2022

The three scientific themes of the team highlight its interdisciplinarity, and allow reflecting the variety of disciplines that interact within the team. It emphasizes research recognized at the best international level, in particular in medical robotics and data science for health:

  • Medical Robotics and Interventional Imaging gathers the historical activities of the team in the field of robotic assistance to minimally invasive medical and surgical procedures, and, beyond, around methodological and clinical developments in interventional radiology.
  • Learning, Modelling and Data Science gathers the activities of the team around artificial intelligence (AI), biomechanical simulation and measurement and evaluation methods, pursued both independently and in synergy, as simulation can be used to generate data for learning.
  • Complex systems and parsimony gathers activities around the control of complex systems, with an evolution over the period aiming at taking into account parsimony as an issue for the control but also for the mechatronics design of robots.


Caption 2
Caption 1
Caption 2
ARC needle
Caption 2
Image-based estimation of the critical view of safety in cholecystectomy
Robotic needle insertion with finite element simulation in the control loop
Climatology Drone
Street Art Drone